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961.
Immunizing potencies of vaccines prepared from various strains of Salmonella were graded by comparing the mortality rate of immunized mice after challenge with highly virulent strains of either Salmonella enteritidis or S. typhimurium. The resistance against this challenge infection was shown to be conferred by joint immunization with a specific factor, which was represented by O specific lipopolysaccharide of smooth strains, and cross-protection factor, which was a major potent factor in live vaccine. The distribution of this cross-protection factor in rough mutants of S. typhimurium was found to be limited to strains which possessed a polysaccharide chain longer than that of glucose1-less mutant. The potency conferring cross-resistance was found to be maintained partly in formalin-killed cells and cell walls of the strains harboring cross-protection factor but not in lipopolysaccharide extracted from such strains.  相似文献   
962.
963.
This article reports the enhancement of thermal stability involving normal duplex and mutation-carrying DNA duplexes in microchannel laminar flow. The application of an in-house temperature-controllable microchannel-type flow cell is demonstrated for improved discrimination of mismatch base pairs such as A-G and T-G that are difficult to distinguish due to the rather small thermal destabilizations. Enhancement in thermal stability is reflected by an increased thermal melting temperature achieved in microchannel laminar flow as compared with batch reactions. To examine the kinetics and thermodynamics of duplex-coil equilibrium of DNA oligomers, denaturation-renaturation hysteresis curves were measured. The influence of microchannel laminar flow on DNA base mismatch analysis was described from the kinetic and thermodynamic perspectives. An increasing trend was observed for association rate constant as flow rate increased. In contrast, an apparent decrease in dissociation rate constant was observed with increasing flow rate. The magnitudes of the activation energies of dissociation were nearly constant for both the batch and microchannel laminar flow systems at all flow rates. In contrast, the magnitudes of activation energies of association decreased as flow rate increased. These results clearly show how microchannel laminar flow induces change in reaction rate by effecting change in activation energy. We anticipate, therefore, that this approach based on microchannel laminar flow system holds great promise for improved mismatch discrimination in DNA analyses, particularly on single-base-pair mismatch, by pronouncedly enhancing thermal stability.  相似文献   
964.
965.
Bactericidal factors in antisera against various chemotype strains of Salmonella were assayed by means of the spot method. Certain smooth and rough strains were resistant to the killing effect of immune mouse sera when the activity was assayed in an isotonic salt medium and guinea pig complement was used. However, the sensitivity was found to be increased in various degrees by assaying it in a medium containing hypotonic concentrations of NaCl or tris(hydroxymethyl)-aminomethane-HCl (Tris-HCl). Keeping the resistant bacteria in hypotonic solutions before or after treatment with complement increased the titer of antiserum, indicating that the hypotonic solution increases the sensitivity of bacterial cells to the antiserum and/or complement. The optimal salt concentration for the assay of serum-sensitive and -resistant smooth strains was 0.02 M NaCl. With Ra through Rd chemotype strains, 0.1 m NaCl before complement treatment and 0.05 m NaCl after the treatment was the best. Isotonic medium was necessary for the titration of the Re chemotype strain. Specificity of the killing effect which was assayed by the hypotonic spot method was shown by adsorption studies on the immune sera. Use of C4-deficient guinea pig complement resulted in low titers against certain strains of bacteria and high titers were restored by the addition of the C4 component of complement. These results indicate that serologically specific bactericidal factors including antibody can be assayed by the spot method using hypotonic NaCl or Tris-HCl.  相似文献   
966.
967.
Tyrosine kinase inhibitors (TKIs) induce autophagy in many types of cancer cells. We previously reported that gefitinib (GEF) and imatinib (IMA) induce autophagy in epidermal growth factor receptor (EGFR) knock-out A549 and non-BCR-ABL-expressing leukemia cell lines, respectively. This evidence suggests that TKI-induced autophagy is independent of the original target molecules. The present study compared the autophagy-inducing abilities of various TKIs, regardless of their targets, by quantitative autophagy flux assay. We established stable clones expressing the GFP-LC3-mCherry-LC3ΔG plasmid in A549, PC-9, and CAL 27 cell lines and assessed autophagy inducibility by monitoring the fluorescent ratios of GFP-LC3 to mCherry-LC3ΔG using an IncuCyte live cell imaging system during exposure to TKIs viz; GEF, osimertinib (OSI), lapatinib (LAP), lenvatinib (LEN), sorafenib (SOR), IMA, dasatinib (DAS), and tivantinib (TIV). Among these TKIs, DAS, GEF, and SOR exhibited prominent autophagy induction in A549 and PC-9 cells. In CAL 27 cells, IMA, SOR, and LEN, but not GEF, TIV, or OSI, exhibited autophagy induction. In the presence of azithromycin (AZM), which showed an inhibitory effect on autophagy flux, TKIs with prominent autophagy inducibility exhibited enhanced cytotoxicity via non-apoptotic cell death relative to effects of TKI alone. Therefore, autophagy inducibility of TKIs differed in the context of cancer cells. However, once induced, they appeared to have cytoprotective functions. Thus, blocking TKI-induced autophagy with AZM may improve the therapeutic effect of TKIs in cancer cells.  相似文献   
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